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Template Templating

Termination can be realized both by macroradicals on the template (template-template termination) or by recombination of radicals on the template with macroradicals or oligoradicals not connected with the template (cross-termination). For some systems, it is difficult to decide whether they are type I or type II. The intermediate systems can also exist. [Pg.11]

Covalent bonding of acrylic or methacrylic monomer to the template leads to multifunctional monomers (multimonomers).If monomer units are connected by covalent bonds within the frame of the template and polymerization proceeds according to the zip mechanism , a product with ladder-type structure can he expected. The structure of products obtained depends on the competition between the reactions proceeding on the template and the reaction between groups belonging to different macromolecules (templates). Template homopolymerization in this case can he represented by the scheme given in Figure 9.1. [Pg.116]

This validation plan describes the prospective validation of the file Template Content Uniformity by UV (V.Ol).xls. The file is located at Drive E Validated Excel templates Template CU UV (V.01).xls. [Pg.282]

Mix equimolar amounts of different DNA templates. Templates can be plasmids carrying the target sequence, (purified) PCR products, or DNA excised by restriction endonucleases. [Pg.28]

The role of template-template self-association in molecular imprinting was the subject of extensive debate during the early work with silica-based systems [1]. Its involvement in organic polymer imprinting has, however, attracted much less... [Pg.66]

Fig. 3.2. A schematic representation of the molecular imprinting pre-arrangement phase (corresponding to 2 in Fig. 3.1), here using ()-nicotine as the template and carboxylic acid containing functional monomers. In this case a total of five states of complexation are proposed I, non-complexed template II, weak single point interaction III, strong single point interaction IV, combination of weak and strong interactions V, higher order complexes e.g. monomer interactions with template-template self-association complexes, higher monomer solvation levels. Fig. 3.2. A schematic representation of the molecular imprinting pre-arrangement phase (corresponding to 2 in Fig. 3.1), here using ()-nicotine as the template and carboxylic acid containing functional monomers. In this case a total of five states of complexation are proposed I, non-complexed template II, weak single point interaction III, strong single point interaction IV, combination of weak and strong interactions V, higher order complexes e.g. monomer interactions with template-template self-association complexes, higher monomer solvation levels.
Loop JHE a JHESeq. Template S Template Template Sequence... [Pg.663]

OHgonucleotides having both a primer (25-mer) and a template (template I (TTTTC)s or template II (TTTTC)io) were immobilized on a cleaned Au electrode of the QCM using a biotin-avidin method. The immobilized amount of the biotinylated template I or II was estimated to be 120 10 and... [Pg.344]

Template Template/H20 (molar ratio) Temperatnr e(K) Time (days) ... [Pg.884]

We have developed an automated parallel synthesis methodology that permits the rapid and detailed Investigation of hydrothermal systems. The general procedure is as follows automatic dispensing of reagents into autoclave blocks followed by synthesis, product isolation and automated structure analysis with X-ray diffractometry. Here we describe the application of this technique to the exploration of the aluminophosphate synthesis field. The effects of template, template concentration, A1 sources as well as mixed template systems are investigated. Emphasis is put on the study of cooperative structure direction effects. [Pg.332]


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See also in sourсe #XX -- [ Pg.228 , Pg.347 , Pg.349 , Pg.350 ]




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